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Multistate electron transfer dynamics in the condensed phase: Exact calculations from the reduced hierarchy equations of motion approach

机译:凝聚相中的多态电子转移动力学:运动方法的简化层次方程的精确计算

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摘要

Multiple displaced oscillators coupled to an Ohmic heat bath are used to describe electron transfer (ET) in a dissipative environment. By performing a canonical transformation, the model is reduced to a multilevel system coupled to a heat bath with the Brownian spectral distribution. A reduced hierarchy equations of motion approach is introduced for numerically rigorous simulation of the dynamics of the three-level system with various oscillator configurations, for different nonadiabatic coupling strengths and damping rates, and at different temperatures. The time evolution of the reduced density matrix elements illustrates the interplay of coherences between the electronic and vibrational states. The ET reaction rates, defined as a flux-flux correlation function, are calculated using the linear response of the system to an external perturbation as a function of activation energy. The results exhibit an asymmetric inverted parabolic profile in a small activation regime due to the presence of the intermediate state between the reactant and product states and a slowly decaying profile in a large activation energy regime, which arises from the quantum coherent transitions.
机译:多个与欧姆热浴耦合的位移振荡器用于描述耗散环境中的电子转移(ET)。通过执行规范转换,将模型简化为一个耦合了具有布朗光谱分布的热浴的多级系统。引入了运动方法的简化层级方程,以数值严格地模拟具有不同振荡器配置,不同绝热耦合强度和阻尼率以及在不同温度下的三能级系统的动力学。密度降低的矩阵元素的时间演化说明了电子状态和振动状态之间的相干关系。使用系统对外部扰动的线性响应作为活化能的函数来计算定义为通量-通量相关函数的ET反应速率。由于在反应物和产物态之间存在中间态,在大活化能态中缓慢衰变的轮廓(由于量子相干跃迁引起),结果在小活化态中显示出不对称的倒抛物线轮廓。

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